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Planning container drayage operations at congested seaports.

机译:规划拥挤港口的集装箱拖运作业。

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摘要

This dissertation considers daily operations management for a fleet of trucks providing container pickup and delivery service to a port. Truck congestion at access points for ports may lead to serious inefficiencies in drayage operations, and the resultant cost impact to the intermodal supply chain can be significant. Recognizing that port congestion is likely to continue to be a major problem for drayage operations given the growing volume of international containerized trade, this research seeks to develop optimization approaches for maximizing the productivity of drayage firms operating at congested seaports. Specifically, this dissertation addresses two daily drayage routing and scheduling problems.; In the first half of this dissertation, we study the problem of managing a fleet of trucks providing container pickup and delivery service to a port facility that experiences different access wait times depending on the time of day. For this research, we assume that the wait time can be estimated by a deterministic function. We develop a time-constrained routing and scheduling model for the problem that incorporates the time-dependent congestion delay function. The model objective is to find routes and schedules for drayage vehicles with minimum total travel time, including the waiting time at the entry to the port due to congestion. We consider both exact and heuristic solution approaches for this difficult optimization problem. Finally, we use the framework to develop an understanding of the potential impact of congestion delays on drayage operations, and the value of planning with accurate delay information.; In the second half of this dissertation, we study methods for managing a drayage fleet serving a port with an appointment-based access control system. Responding to growing access congestion and its resultant impacts, many U.S. port terminals have implemented appointment systems, but little is known about the impact of such systems on drayage productivity. To address this knowledge gap, we develop a drayage operations optimization approach based on a column generation integer programming heuristic that explicitly models a time-slot port access control system. The approach determines pickup and delivery sequences with minimum transportation cost. We use the framework to develop an understanding of the potential efficiency impacts of access appointment systems on drayage operations. Findings indicate that the set of feasible drayage tasks and the fleet size required to complete them can be quite sensitive to small changes in time-slot access capacities at the port.
机译:本文考虑了为港口提供集装箱接送服务的卡车车队的日常运营管理。卡车在港口出入口处的拥堵可能会导致拖运作业的效率低下,从而对联运供应链造成的成本影响可能会很大。考虑到国际集装箱贸易量的增长,港口拥挤可能仍然是拖运业务的主要问题,本研究旨在开发优化方法,以使拥挤海港的拖运公司的生产率最大化。具体而言,本论文解决了两个日常的运输路线和调度问题。在本文的前半部分,我们研究了管理一个卡车队的问题,这些卡车队向港口设施提供集装箱取放和运送服务,该港口设施根据一天中的时间经历不同的进入等待时间。对于本研究,我们假设可以通过确定性函数来估计等待时间。针对包含时间相关的拥塞延迟功能的问题,我们开发了时间受限的路由和调度模型。该模型的目标是找到具有最小总行驶时间的拖曳车辆的路线和时间表,包括由于拥堵而进入港口的等待时间。对于这个困难的优化问题,我们同时考虑精确和启发式解决方案。最后,我们使用该框架来了解拥堵延迟对拖运操作的潜在影响,以及利用准确的延迟信息进行计划的价值。在本文的后半部分,我们研究了使用基于约会的访问控制系统管理为港口服务的拖曳车队的方法。为了应对不断增长的访问拥塞及其带来的影响,许多美国港口码头已实施了约会系统,但对于此类系统对拖船生产力的影响知之甚少。为了解决这一知识鸿沟,我们基于列生成整数编程启发式方法开发了拖运操作优化方法,该方法显式地模拟了时隙端口访问控制系统。该方法以最小的运输成本确定取货和交付顺序。我们使用该框架来了解通行预约系统对拖运作业的潜在效率影响。研究结果表明,可行的拖运任务集和完成这些任务所需的船队规模可能对港口的时隙访问能力的微小变化非常敏感。

著录项

  • 作者

    Namboothiri, Rajeev.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Industrial.; Operations Research.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 141 p.
  • 总页数 141
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 一般工业技术;运筹学;
  • 关键词

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